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arxiv: hep-th/0403132 · v3 · pith:TWITKZEL · submitted 2004-03-11 · hep-th · astro-ph· gr-qc· hep-ph· math-ph· math.MP

Asymptotic Quasinormal Frequencies for Black Holes in Non-Asymptotically Flat Spacetimes

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classification hep-th astro-phgr-qchep-phmath-phmath.MP
keywords asymptoticfrequenciesquasinormalspacetimesblackflatmethodschwarzschild
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The exact computation of asymptotic quasinormal frequencies is a technical problem which involves the analytic continuation of a Schrodinger-like equation to the complex plane and then performing a method of monodromy matching at the several poles in the plane. While this method was successfully used in asymptotically flat spacetime, as applied to both the Schwarzschild and Reissner-Nordstrom solutions, its extension to non-asymptotically flat spacetimes has not been achieved yet. In this work it is shown how to extend the method to this case, with the explicit analysis of Schwarzschild de Sitter and large Schwarzschild Anti-de Sitter black holes, both in four dimensions. We obtain, for the first time, analytic expressions for the asymptotic quasinormal frequencies of these black hole spacetimes, and our results match previous numerical calculations with great accuracy. We also list some results concerning the general classification of asymptotic quasinormal frequencies in d-dimensional spacetimes.

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Cited by 3 Pith papers

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    Quasinormal modes are eigenmodes of dissipative gravitational systems whose spectra encode near-equilibrium transport coefficients in dual quantum field theories and enable tests of general relativity through gravitat...

  3. Quasinormal modes of black holes: from astrophysics to string theory

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    This review surveys calculations and interpretations of quasinormal modes for black holes in astrophysics, higher dimensions, and holographic duals without presenting new results.